首页> 外文期刊>European Journal of Agronomy >Effect of drought stress on the osmotic adjustment, cell wall elasticity and cell volume of six cultivars of common beans (Phaseolus vulgaris L.).
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Effect of drought stress on the osmotic adjustment, cell wall elasticity and cell volume of six cultivars of common beans (Phaseolus vulgaris L.).

机译:干旱胁迫对6个普通豆(Phaseolus vulgaris L.)渗透调节,细胞壁弹性和细胞体积的影响。

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摘要

In the southern spring-summer season of 2001-2002 six cultivars (Orfeo, Arroz Tuscola, Barbucho, Coscorron, Pinto and Tortola) of common beans (Phaseolus vulgaris L.) were grown under two frequencies of irrigation in the central zone of Chile. Control plants were irrigated every 7 days and water stress plants were irrigated every 21 days. Leaf water potential ( Psi W), leaf relative water content (RWC), turgid weight to dry weight ratio (TW/DW), osmotic potential at full turgor ( psi S100), osmotic adjustment (OA), elasticity module of the cell wall ( epsilon ) and cell size of the palisade and spongy tissue were evaluated at 74-76 days after sowing (DAS) in completely developed leaves. Water stressed plants showed lower Psi W than in control plants in all the varieties with values that averaged -1.4 and -0.9 MPa, respectively. According to the Drought Resistance Index (DRI) calculated from field measurements, among the cultivars studied, Orfeo was the most resistant to water stress and Arroz Tuscola, the most susceptible. A close negative relationship between leaf TW/DW and DRI under water stress conditions was observed (r2=0.63). Leaf TW/DW decreased considerably with water stress in cultivar Orfeo (15%) but the decrease was higher in Tortola (22%), and there was also a decrease (although smaller) in Pinto (11%). Arroz Tuscola under stress did not present an important change in TW/DW, but presented one of the highest values of TW/DW. There was a strong negative correlation between DRI and palisade cell size under water stress conditions (r2=0.85) and a strong positive one between palisade cell size and TW/DW (r2=0.86) thus higher DRI was associated with small palisade cell size and small TW/DW. The most resistant cultivar Orfeo did not show a decrease in psi S100 calculated from the pressure-RWC relationships and its resistance was not associated with maintenance of leaf TW/DW under water stress. psi S100 calculated from the pressure-RWC relationships decreased only in the cultivar Coscorron. Cultivar Orfeo showed a strong decrease (35%) of epsilon , in association to a higher cell wall elasticity (CWE) and as consequence maintained better its cell turgescence but this was also the case of Tortola (56%) and Pinto (34%) and to a lesser extent of Barbucho (18%). This was not the case for Arroz Tuscola where and CWE were not changed. These results suggest that CWE and to a lesser extent leaf TW/DW can be important components of the water stress adaptation mechanism in this specie that could contribute to the higher resistance to water stress of Orfeo compared to Arroz Tuscola..
机译:在2001-2002年的南部春夏季节,智利中部地区以两种灌溉频率种植了六个普通豆(菜豆(Phaseolus vulgaris L。))(Orfeo,Arroz Tuscola,Barbucho,Coscorron,Pinto和Tortola)。每7天浇一次对照植物,每21天浇一次水分胁迫植物。叶片水势(Psi W),叶片相对水含量(RWC),节水重量与干重比(TW / DW),全膨胀时的渗透势(psi S100),渗透调节(OA),细胞壁弹性模块在完全发育的叶片中播种(DAS)后74-76天,评估木栅栏和海绵状组织的(ε)和细胞大小。在所有品种中,水分胁迫植物的Psi W值均低于对照植物,其平均值分别为-1.4和-0.9 MPa。根据从实地测量得出的抗旱指数(DRI),在研究的品种中,Orfeo对水分胁迫的抵抗力最强,而Arroz Tuscola最易受水分胁迫。在水分胁迫条件下,叶片TW / DW和DRI之间存在密切的负相关关系(r2 = 0.63)。水分胁迫下,Orfeo品种的叶片TW / DW显着降低(15%),而Tortola的叶片TW / DW降低幅度更大(22%),Pinto的叶片TW / DW降低幅度较大(虽然较小)(11%)。压力下的Arroz Tuscola并未显示TW / DW的重要变化,而是呈现出TW / DW的最高值之​​一。在水分胁迫条件下,DRI与栅栏细胞大小之间存在很强的负相关性(r2 = 0.85),在栅栏细胞大小与TW / DW之间存在强正相关(r2 = 0.86),因此较高的DRI与较小的栅栏细胞大小有关。小型TW / DW。从压力-RWC关系计算得出,最耐抗性的品种Orfeo没有显示出psi S100的降低,并且其抗性与水分胁迫下叶片TW / DW的维持无关。从压力-RWC关系式计算得出的psi S100仅在Coscorron品种中降低。品种Orfeo显示出ε的强烈降低(35%),与更高的细胞壁弹性(CWE)相关,因此保持了更好的细胞透性,但Tortola(56%)和Pinto(34%)也是如此以及较小比例的Barbucho(18%)。对于Arroz Tuscola而言,情况并非如此,并且CWE不变。这些结果表明,CWE和较小的叶片TW / DW可能是该物种水分胁迫适应机制的重要组成部分,与Arroz Tuscola相比,可能对Orfeo的水分胁迫具有更高的抵抗力。

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