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豌豆水向弯曲根中伸长细胞的水分吸收及水力特性

Water uptake and hydraulic properties of elongating cells in hydrotropically bending roots of Pisum sativum L.

作者信息

Miyamoto Naoko, Ookawa Taiichiro, Takahashi Hideyuki, Hirasawa Tadashi

机构信息

Faculty of Agriculture, Tokyo University of Agriculture and Technology, Fuchu, 183-8509 Japan.

出版信息

Plant Cell Physiol. 2002 Apr;43(4):393-401. doi: 10.1093/pcp/pcf046.

Abstract

The water potential and hydraulic conductivity (Lp) of elongating cells in hydrotropically bending roots of the ageotropic mutant ageotropum of pea (Pisum sativum L.) were measured in situ. When agar blocks with water potentials of -0.03 and -0.8 MPa were unilaterally applied directly to a root tip, cells in the most rapidly elongating zone, 3-4 mm from the tip, showed marked differential growth. The rate of water uptake by a cell on the side treated with an agar block with a lower water potential was significantly larger in the outer first and second layers of cortex than on the other side. There were no differences in the values of turgor pressure, osmotic potential and calculated water potential between the two sides either in elongating or in mature cells, indicating the absence of any difference in the growth-induced water potential on the two sides of the root. Lp was significantly larger on the side with the agar block with lower water potential. The results suggest that the difference in the rate of water uptake during the differential cell growth that occurs during root hydrotropism might be induced mainly by a change in Lp.

摘要

对豌豆(Pisum sativum L.)向地性突变体“ageotropum”的向水性弯曲根中伸长细胞的水势和水力传导率(Lp)进行了原位测量。当将水势分别为-0.03和-0.8 MPa的琼脂块单侧直接施加到根尖时,距根尖3-4 mm的伸长最快区域的细胞表现出明显的差异生长。用较低水势琼脂块处理一侧的细胞在皮层的外层第一和第二层中的吸水速率明显大于另一侧。在伸长细胞或成熟细胞中,两侧的膨压、渗透势和计算得到的水势值均无差异,表明根两侧生长诱导的水势没有任何差异。在水势较低的琼脂块一侧,Lp明显更大。结果表明,根向水性过程中发生的差异细胞生长期间吸水速率的差异可能主要是由Lp的变化引起的。

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