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Nitrogen Fixation (C2H2 Reduction) by Broad Bean (Vicia faba L.) Nodules and Bacteroids under Water-Restricted Conditions 1

机译:缺水条件下蚕豆(Vicia faba L.)结节和类固氮素的固氮作用(减少C2H2)1

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摘要

Water potentials of leaves and nodules of broad bean (Vicia faba L.) cultivated on a sandy mixture were linearly and highly (r2 = 0.99) correlated throughout a water deprivation of plants. A decrease of 0.2 megapascal of the nodule water potential (Ψnod) induced an immediate 25% inhibition of the highest level of acetylene reduction of broad bean nodules attached to roots. This activity continued to be depressed when water stress increased, but the effect was less pronounced. Partial recovery of optimal C2H2 reduction capacity of mildly water stressed nodules (Ψnod = −1.2 megapascals) was possible by increasing the external O2 partial pressure up to 60 kilopascals. The dense packing of the cortical cells of nodules may be responsible for the limitation of O2 diffusion to the central tissue. Bacteroids isolated from broad bean nodules exhibited higher N2 fixation activity with glucose than with succinate as an energy-yielding substrate. Bacteroids from stressed nodules appeared more sensitive to O2, and their optimal activity declined with increasing nodule water deprivation. This effect could be partly due to decreased bacteroid respiration capacity with water stress. Water stress was also responsible for a decrease of the cytosolic protein content of the nodule and more specifically of leghemoglobin. The alteration of the bacteroid environment appears to contribute to the decline in N2 fixation under water restricted conditions.
机译:在缺水的情况下,在沙质混合物上栽培的蚕豆(蚕豆(Vicia faba L.))的叶片和根瘤的水势呈线性且高度相关(r2 = 0.99)。结节水势(Ψnod)降低0.2兆帕斯卡,会立即抑制附着在根部的蚕豆结节中乙炔最高含量的最高降低25%。当水分胁迫增加时,该活性继续被抑制,但是效果不太明显。通过将外部氧气分压提高到60千帕斯卡,可以部分恢复适度水分胁迫的结节(Ψnod= -1.2兆帕斯卡)的最佳C2H2还原能力。结节皮层细胞的密集堆积可能是限制O2扩散到中央组织的原因。从蚕豆根瘤中分离出的类细菌对葡萄糖的固氮活性高于琥珀酸酯作为增能底物。来自结节状细菌的类细菌似乎对O2更加敏感,并且其最佳活性随结节水剥夺的增加而降低。这种作用可能部分是由于水分胁迫导致细菌呼吸能力降低。水分胁迫还导致结节,更具体而言是豆血红蛋白的胞质蛋白含量降低。在水限制条件下,类细菌环境的改变似乎会导致N2固定的下降。

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