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Relationship between abscisic acid content, dry weight and freezing tolerance in barley cv. Lunet

机译:大麦简历中脱落酸含量,干重与耐冻性之间的关系。露内特

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摘要

The role of abscisic acid (ABA) in freezing tolerance induction of hydroponically cultivated barley (Hordeum vulgate L. cv. Lunet) plants was studied using a number of approaches. First, the plants were hardened by cold at 3 deg C. Second, the endogenous ABA content was increased by means of three established methods: (i) rapid dehydration of detached, fully expanded second leaves; (ii) application of 20 % polyethylene glycol 8000 (PEG) into the growth solution of plants; or (iii) 7.5 X 10~(-5) mol/L ABA supplement into the growth solution. The changes in freezing tolerance, dry veight, and ABA content were measured in second leaves. Cold hardening of plants resulted in increased freezing tolerance and was related to accumulation of dry weight in leaves; however, only some ABA content fluctuation was observed. The rapid dehydration of detached leaves resulted in an increase of ABA content but not in any significant increase in freezing tolerance. The increase of ABA content in the leaves of intact plants, either due to application of PEG or addition of exogenous ABA into the growth medium, led only to a moderate increase of leaf dry weight content and freezing tolerance. Low temperature treatment accompanied by the accumulation of dry weight is essential to acquire a full measure of freezing tolerance. The involvement of ABA in cold hardening of plants could not simply be explained by increased content only.
机译:使用多种方法研究了脱落酸(ABA)在水培大麦(Hordeum vulgate L. cv。Lunet)植物的耐冻性诱导中的作用。首先,在3摄氏度的低温下使植物变硬。其次,通过三种确定的方法增加了内源ABA的含量:(i)分离的,完全展开的第二片叶子快速脱水; (ii)在植物的生长溶液中施用20%的聚乙二醇8000(PEG);或(iii)在生长溶液中添加7.5 X 10〜(-5)mol / L ABA。在第二片叶子中测量了耐冻性,干重和ABA含量的变化。植物的冷硬化导致增加的抗冻性,并与叶片中干重的积累有关。然而,仅观察到一些ABA含量波动。离体叶片的快速脱水导致ABA含量增加,但抗冻性没有任何显着提高。完整植株叶片中ABA含量的增加,无论是由于施用PEG还是向生长培养基中添加外源ABA导致,仅导致叶片干重含量和抗冻性适度增加。低温处理并伴随着干重的积累对于获得全面的冷冻耐受性至关重要。 ABA参与植物的冷硬化不能仅仅通过增加含量来简单解释。

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