Ren Baoling, Guo Xin, Liu Jingjing, Feng Guifang, Hao Xiaodong, Zhang Xu, Chen Zhiqun
College of Life Sciences, Linyi University, Linyi 276000, China.
School of Resources and Environment, Linyi University, Linyi 276000, China.
Plants (Basel). 2024 Sep 24;13(19):2679. doi: 10.3390/plants13192679.
Root-knot nematodes induce the formation of feeding sites within the host roots and the relocation of auxin into galls results in abnormal lateral root growth. Here, we analyzed the changes in cucumber root architecture under stress and the distribution of auxin in these morphological and molecular root changes. The number of root tips significantly decreased, and regression analysis showed a positive relationship between the size of root galls and the numbers of nematodes in galls compared with the lateral roots on galls, emphasizing the effect of nematode parasitism on root development. Data generated via a promoter-reporter system using the transgenic hairy root system first characterized the auxin distribution during nematode parasitism in cucumber. Using staining of root galls, we further detected the expression of and , which regulate polar auxin transport. The results showed that both and were induced in galls, and the relative expression of the two genes significantly increased at 21 DAI. The TIBA treatment, which can disrupt polar auxin transport inhibited the numbers of cucumber root tips and total length following increasing concentration gradients. Moreover, the numbers of galls were significantly affected by TIBA treatment, which showed the vital role of auxin during nematode parasitism. Our findings suggest that the transportation of auxin plays an important role during gall formation and induces cucumber lateral root development within nematode feeding sites.
根结线虫会在寄主根内诱导取食位点的形成,生长素向虫瘿内的重新分布会导致侧根生长异常。在此,我们分析了黄瓜根系结构在胁迫下的变化以及生长素在这些根系形态和分子变化中的分布情况。根尖数量显著减少,回归分析表明,与虫瘿上的侧根相比,根瘿大小与虫瘿内线虫数量之间呈正相关,这突出了线虫寄生对根系发育的影响。通过使用转基因毛状根系统的启动子 - 报告系统生成的数据首次表征了黄瓜线虫寄生过程中的生长素分布情况。通过对根瘿进行染色,我们进一步检测了调控生长素极性运输的 和 的表达。结果表明, 和 在虫瘿中均被诱导,且这两个基因的相对表达在侵染后21天显著增加。能破坏生长素极性运输的TIBA处理随着浓度梯度增加抑制了黄瓜根尖数量和总长度。此外,TIBA处理对虫瘿数量有显著影响,这表明生长素在 nematode parasitism 过程中起着至关重要的作用。我们的研究结果表明,生长素的运输在虫瘿形成过程中起重要作用,并诱导线虫取食位点内黄瓜侧根的发育。